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A smart nanofibrous material for adsorbing and detecting elemental mercury in air

机译:一种用于吸附和检测空气中汞的智能纳米纤维材料

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The combination of the affinity of gold for mercury and nanosized frameworks has allowed for the design and fabrication of novel kinds of sensors with promising sensing features for environmental applications. Specifically, conductive sensors based on composite nanofibrous electrospun layers of titania easily decorated with gold nanoparticles were developed to obtain nanostructured hybrid materials capable of entrapping and revealing gaseous elemental mercury (GEM) traces from the environment. The electrical properties of the resulting chemosensors were measured. A few minutes of air sampling were sufficient to detect the concentration of mercury in the air, ranging between 20 and 100?ppb, without using traps or gas carriers (LOD: 1.5?ppb). Longer measurements allowed the sensor to detect lower concentrations of GEM. The resulting chemosensors are expected to be low cost and very stable (due to the peculiar structure), requiring low power, low maintenance, and simple equipment.
机译:黄金对汞的亲和力和纳米级框架的结合,允许设计和制造新型的传感器,这些传感器具有适用于环境的传感功能。具体地,开发了基于容易用金纳米颗粒装饰的二氧化钛的复合纳米纤维电纺丝层的导电传感器,以获得能够从环境中截留并显示气态元素汞(GEM)痕迹的纳米结构混合材料。测量所得化学传感器的电性能。几分钟的空气采样足以检测空气中的汞浓度,范围在20至100µppb之间,而无需使用阱或气体载体(LOD:1.5µppb)。更长的测量时间可以使传感器检测到较低的GEM浓度。预期所得的化学传感器成本低廉且非常稳定(由于其特殊的结构),因此需要低功耗,低维护和简单的设备。

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